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Compartmentalization and Photoregulating Pathways for Incompatible Tandem Catalysis

机译:划分和光调节途径,不相容串联催化

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摘要

This contribution describes an advanced compartmentalized micellar nanoreactor that possesses a reversible photo-responsive feature and its application toward photoregulating reaction pathways for incompatible tandem catalysis under aqueous conditions. The smart nanoreactor is based on multifunctional amphiphilic poly(2-oxazoline)s and covalently cross-linked with spiropyran upon micelle formation in water. It responds to light irradiation in a wavelength-selective manner switching its morphology as confirmed by dynamic light scattering and cryo-transition electron microscopy. The compartmental structure renders distinct nanoconfinements for two incompatible enantioselective transformations: a rhodium-diene complex-catalyzed asymmetric 1,4-addition occurs in the hydrophilic corona, while a Rh-TsDPEN-catalyzed asymmetric transfer hydrogenation proceeds in the hydrophobic core. Control experiments and kinetic studies showed that the gated behavior induced by the phototriggered reversible spiropyran to merocyanine transition in the cross-linking layer is key to discriminate among substrates/reagents during the catalysis. The smart nanoreactor realized photoregulation to direct the reaction pathway to give a multichiral product with high conversions and perfect enantioselectivities in aqueous media. Our SCM catalytic system, on a basic level, mimics the concepts of compartmentalization and responsiveness Nature uses to coordinate thousands of incompatible chemical transformations into streamlined metabolic processes.
机译:该贡献描述了一种先进的分隔型胶束纳米反应器,其具有可逆的光响应特征及其朝向在水性条件下对不相容的串联催化的反应途径的应用。智能纳米反应器基于多功能两亲的聚(2-恶唑啉),并在水中胶束形成,与螺吡喃共价交联。它以波长选择性方式响应光照射,从动态光散射和低温转换电子显微镜确认,切换其形态。隔室结构使两种不相容的对映选择性转化的不同的纳米核:铑 - 二烯复合催化的不对称的不对称1,4-加入发生在亲水性电晕中,而Rh-Tsdpen催化的不对称转移氢化在疏水芯中进行。对照实验和动力学研究表明,在催化期间,光触发可逆螺旋吡喃对交叉连接层中的Merocyanine过渡的腺苷酸过渡诱导的门控行为是关键催化在催化期间的基材/试剂中。智能纳米反应器实现了光探测,以指导反应途径,使多致产物具有高转化率和完美的含水介质映射性。我们的SCM催化系统,在基本层面,模拟了分区化和响应性的概念,用于协调数千个不相容的化学转化,进入流线型的代谢过程。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2021年第12期|4705-4713|共9页
  • 作者单位

    Molecular Design Institute and Department of Chemistry New York University New York 10003 United States;

    Molecular Design Institute and Department of Chemistry New York University New York 10003 United States;

    Molecular Design Institute and Department of Chemistry New York University New York 10003 United States;

    Molecular Design Institute and Department of Chemistry New York University New York 10003 United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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